Theoretical analysis of thermal/electric-filed poling silica glass
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Engineering,General Materials Science
Link
https://link.springer.com/content/pdf/10.1360/02ye9073.pdf
Reference16 articles.
1. Myers, R. A., Mukherjee, N., Brueck, S. R. J., Large second-order nonlinearity in poled fused silica, Opt Lett., 1991, 16(22): 1732–1734.
2. Long, X.-C., Brueck, S. R. J., Large-signal phase retardation with a poled electrooptic fiber, IEEE. Pho. Tech. Lett., 1997, 9(6): 767–769.
3. Pruneri, V., Bonfrate, G., Kazansky, P. G. et al., Greater than 20%-efficient frequency doubling of 1532-nm nanosecond pulses in quasi-phase-matched germanosilicate optical fibers, Opt. Lett., 1999, 24(4): 208–210.
4. Kazansky, P. G., Russell, P. S. J., Takebe, H., Glass fiber poling and applications, J. Lightwave Tech., 1997, 15(8): 1484–1493.
5. Tanaka, K., Narazaki, A., Hirao, K., Large optical second-order nonlinearity of poled WO3−TeO2 glass, Opt. Lett., 2000, 25(4): 251–253.
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